feat(linear-static-mitc4-shell): step 9 - shell-analysis-state
This commit is contained in:
@@ -1,9 +1,11 @@
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#pragma once
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#include "fesa/core/status.hpp"
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#include "fesa/fem/dof_manager.hpp"
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#include "fesa/math/vector.hpp"
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#include "fesa/results/result_records.hpp"
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#include <array>
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#include <cstddef>
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#include <vector>
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@@ -32,6 +34,13 @@ public:
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const std::vector<GaussResultRow>& gaussResults() const noexcept;
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std::vector<StressS11Row>& stressResults() noexcept;
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const std::vector<StressS11Row>& stressResults() const noexcept;
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Status commitShellResults(
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const std::vector<EntityIndex>& expectedElementOrder,
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ShellStateCandidate candidate);
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const std::vector<ShellResultRow>& shellResults() const noexcept;
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double physicalStrainEnergy() const noexcept;
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const std::array<double, 6>& equilibrium() const noexcept;
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const std::array<double, 3>& verificationMetrics() const noexcept;
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private:
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AnalysisState(std::size_t fullDofCount, StepFrameIdentity identity);
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@@ -47,6 +56,11 @@ private:
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std::vector<EndpointResultRow> endpointResults_;
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std::vector<GaussResultRow> gaussResults_;
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std::vector<StressS11Row> stressResults_;
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// Shell recovery is replaced only through validated candidate commit.
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std::vector<ShellResultRow> shellResults_;
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double physicalStrainEnergy_{0.0};
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std::array<double, 6> equilibrium_{};
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std::array<double, 3> verificationMetrics_{};
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};
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} // namespace fesa
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@@ -5,6 +5,7 @@
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#include <array>
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#include <cstddef>
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#include <string>
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#include <vector>
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namespace fesa {
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@@ -38,4 +39,45 @@ struct StressS11Row {
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std::string source;
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};
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enum class ShellMidsurfaceLocation {
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gp1,
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gp2,
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gp3,
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gp4
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};
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enum class ShellSectionPosition {
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bottom,
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middle,
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top
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};
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struct ShellSectionStressRow {
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ShellSectionPosition position;
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double zeta;
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std::array<double, 3> components;
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};
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struct ShellResultRow {
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EntityIndex element;
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ShellMidsurfaceLocation location;
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std::array<double, 2> naturalCoordinates;
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// Axis rows [e1,e2,e3], global-component columns.
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std::array<std::array<double, 3>, 3> localFrame;
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std::array<double, 8> generalizedStrain;
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std::array<double, 8> sectionResultant;
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// Fixed BOTTOM, MIDDLE, TOP order; components are [S11,S22,S12].
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std::array<ShellSectionStressRow, 3> stress;
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};
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struct ShellStateCandidate {
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std::vector<ShellResultRow> rows;
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double physicalStrainEnergy{0.0};
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// [FORCE_1,FORCE_2,FORCE_3,MOMENT_1,MOMENT_2,MOMENT_3].
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std::array<double, 6> equilibrium{};
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// [FREE_RESIDUAL_NORMALIZED,FORCE_BALANCE_NORMALIZED,
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// MOMENT_BALANCE_NORMALIZED].
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std::array<double, 3> verificationMetrics{};
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};
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} // namespace fesa
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@@ -1,8 +1,57 @@
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#include "fesa/analysis/analysis_state.hpp"
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#include <algorithm>
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#include <array>
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#include <cmath>
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#include <limits>
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#include <string>
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#include <utility>
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namespace fesa {
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namespace {
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constexpr std::size_t kShellLocationsPerElement = 4U;
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Status shellCandidateFailure(
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const std::string& code,
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const std::string& identity,
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const std::string& message) {
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return Status::failure(
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FailureCategory::model,
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{{Severity::error,
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code,
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{},
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"ANALYSIS_STATE",
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identity,
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message}});
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}
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template<std::size_t Size>
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bool finite(const std::array<double, Size>& values) {
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return std::all_of(
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values.begin(), values.end(),
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[](const double value) { return std::isfinite(value); });
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}
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bool finite(const ShellResultRow& row) {
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if (!finite(row.naturalCoordinates) ||
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!finite(row.generalizedStrain) ||
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!finite(row.sectionResultant)) {
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return false;
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}
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for (const auto& axis : row.localFrame) {
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if (!finite(axis)) {
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return false;
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}
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}
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return std::all_of(
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row.stress.begin(), row.stress.end(),
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[](const ShellSectionStressRow& stress) {
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return std::isfinite(stress.zeta) && finite(stress.components);
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});
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}
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} // namespace
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AnalysisState AnalysisState::create(
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const DofManager& dofs, StepFrameIdentity identity) {
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@@ -77,6 +126,123 @@ const std::vector<StressS11Row>& AnalysisState::stressResults() const noexcept {
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return stressResults_;
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}
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Status AnalysisState::commitShellResults(
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const std::vector<EntityIndex>& expectedElementOrder,
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ShellStateCandidate candidate) {
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if (expectedElementOrder.size() >
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(std::numeric_limits<std::size_t>::max)() /
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kShellLocationsPerElement) {
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return shellCandidateFailure(
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"invalid-shell-state-inventory",
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identity_.stepName,
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"The expected shell result inventory is too large.");
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}
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const std::size_t expectedRowCount =
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expectedElementOrder.size() * kShellLocationsPerElement;
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if (candidate.rows.size() != expectedRowCount) {
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return shellCandidateFailure(
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"invalid-shell-state-inventory",
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identity_.stepName,
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"Shell results require exactly four rows per expected element.");
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}
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if (std::adjacent_find(
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expectedElementOrder.begin(), expectedElementOrder.end(),
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[](const EntityIndex left, const EntityIndex right) {
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return left >= right;
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}) != expectedElementOrder.end()) {
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return shellCandidateFailure(
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"invalid-shell-state-inventory",
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identity_.stepName,
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"Expected shell elements must be unique and in stable index order.");
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}
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const std::array<ShellMidsurfaceLocation, kShellLocationsPerElement>
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expectedLocations{
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ShellMidsurfaceLocation::gp1,
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ShellMidsurfaceLocation::gp2,
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ShellMidsurfaceLocation::gp3,
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ShellMidsurfaceLocation::gp4};
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const double gauss = 1.0 / std::sqrt(3.0);
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const std::array<std::array<double, 2>, kShellLocationsPerElement>
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expectedCoordinates{
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std::array<double, 2>{-gauss, -gauss},
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std::array<double, 2>{gauss, -gauss},
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std::array<double, 2>{gauss, gauss},
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std::array<double, 2>{-gauss, gauss}};
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const std::array<ShellSectionPosition, 3> expectedPositions{
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ShellSectionPosition::bottom,
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ShellSectionPosition::middle,
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ShellSectionPosition::top};
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constexpr std::array<double, 3> expectedZeta{-1.0, 0.0, 1.0};
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for (std::size_t elementOrder = 0U;
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elementOrder < expectedElementOrder.size();
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++elementOrder) {
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for (std::size_t point = 0U;
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point < kShellLocationsPerElement;
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++point) {
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const auto& row = candidate.rows[
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elementOrder * kShellLocationsPerElement + point];
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if (row.element != expectedElementOrder[elementOrder] ||
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row.location != expectedLocations[point] ||
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row.naturalCoordinates != expectedCoordinates[point]) {
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return shellCandidateFailure(
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"invalid-shell-state-inventory",
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std::to_string(row.element),
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"Shell rows must preserve element and GP1 through GP4 identity.");
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}
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for (std::size_t position = 0U;
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position < expectedPositions.size();
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++position) {
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if (row.stress[position].position !=
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expectedPositions[position] ||
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row.stress[position].zeta != expectedZeta[position]) {
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return shellCandidateFailure(
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"invalid-shell-state-inventory",
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std::to_string(row.element),
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"Shell stress rows require BOTTOM, MIDDLE, TOP identity.");
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}
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}
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if (!finite(row)) {
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return shellCandidateFailure(
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"nonfinite-shell-state-value",
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std::to_string(row.element),
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"Shell result rows must contain only finite values.");
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}
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}
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}
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if (!std::isfinite(candidate.physicalStrainEnergy) ||
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!finite(candidate.equilibrium) ||
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!finite(candidate.verificationMetrics)) {
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return shellCandidateFailure(
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"nonfinite-shell-state-value",
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identity_.stepName,
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"Shell energy, equilibrium, and normalized metrics must be finite.");
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}
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shellResults_ = std::move(candidate.rows);
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physicalStrainEnergy_ = candidate.physicalStrainEnergy;
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equilibrium_ = candidate.equilibrium;
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verificationMetrics_ = candidate.verificationMetrics;
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return Status::ok();
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}
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const std::vector<ShellResultRow>& AnalysisState::shellResults() const noexcept {
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return shellResults_;
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}
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double AnalysisState::physicalStrainEnergy() const noexcept {
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return physicalStrainEnergy_;
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}
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const std::array<double, 6>& AnalysisState::equilibrium() const noexcept {
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return equilibrium_;
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}
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const std::array<double, 3>& AnalysisState::verificationMetrics() const noexcept {
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return verificationMetrics_;
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}
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AnalysisState::AnalysisState(
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std::size_t fullDofCount, StepFrameIdentity identity)
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: identity_{std::move(identity)},
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@@ -3,8 +3,11 @@
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#include <gtest/gtest.h>
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#include <array>
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#include <cmath>
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#include <filesystem>
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#include <limits>
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#include <utility>
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#include <vector>
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namespace {
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@@ -25,6 +28,130 @@ fesa::DofManager makeEmptyDofs() {
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return std::move(dofs.value());
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}
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fesa::ShellResultRow makeShellRow(
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fesa::EntityIndex element,
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fesa::ShellMidsurfaceLocation location,
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std::array<double, 2> naturalCoordinates,
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double seed) {
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return {
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element,
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location,
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naturalCoordinates,
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{{{1.0, 0.0, 0.0}, {0.0, 1.0, 0.0}, {0.0, 0.0, 1.0}}},
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{seed + 1.0,
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seed + 2.0,
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seed + 3.0,
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seed + 4.0,
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seed + 5.0,
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seed + 6.0,
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seed + 7.0,
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seed + 8.0},
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{seed + 11.0,
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seed + 12.0,
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seed + 13.0,
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seed + 14.0,
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seed + 15.0,
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seed + 16.0,
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seed + 17.0,
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seed + 18.0},
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{{{fesa::ShellSectionPosition::bottom,
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-1.0,
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{seed + 21.0, seed + 22.0, seed + 23.0}},
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{fesa::ShellSectionPosition::middle,
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0.0,
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{seed + 24.0, seed + 25.0, seed + 26.0}},
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{fesa::ShellSectionPosition::top,
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1.0,
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{seed + 27.0, seed + 28.0, seed + 29.0}}}}};
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}
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fesa::ShellStateCandidate makeShellCandidate(
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const std::vector<fesa::EntityIndex>& elements) {
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const double gauss = 1.0 / std::sqrt(3.0);
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const std::array<fesa::ShellMidsurfaceLocation, 4> locations{
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fesa::ShellMidsurfaceLocation::gp1,
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fesa::ShellMidsurfaceLocation::gp2,
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fesa::ShellMidsurfaceLocation::gp3,
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fesa::ShellMidsurfaceLocation::gp4};
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const std::array<std::array<double, 2>, 4> coordinates{
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std::array<double, 2>{-gauss, -gauss},
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std::array<double, 2>{gauss, -gauss},
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std::array<double, 2>{gauss, gauss},
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std::array<double, 2>{-gauss, gauss}};
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fesa::ShellStateCandidate candidate{};
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for (const auto element : elements) {
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for (std::size_t point = 0U; point < locations.size(); ++point) {
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candidate.rows.push_back(makeShellRow(
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element,
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locations[point],
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coordinates[point],
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100.0 * static_cast<double>(element) +
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10.0 * static_cast<double>(point)));
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}
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}
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candidate.physicalStrainEnergy = 35.5;
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candidate.equilibrium = {1.0, -2.0, 3.0, -4.0, 5.0, -6.0};
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candidate.verificationMetrics = {1.0e-11, 2.0e-11, 3.0e-11};
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return candidate;
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}
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void expectShellStateEquals(
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const fesa::AnalysisState& state,
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const std::vector<fesa::ShellResultRow>& rows,
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double physicalStrainEnergy,
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const std::array<double, 6>& equilibrium,
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const std::array<double, 3>& verificationMetrics) {
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ASSERT_EQ(state.shellResults().size(), rows.size());
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for (std::size_t row = 0U; row < rows.size(); ++row) {
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EXPECT_EQ(state.shellResults()[row].element, rows[row].element);
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EXPECT_EQ(state.shellResults()[row].location, rows[row].location);
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EXPECT_EQ(
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state.shellResults()[row].naturalCoordinates,
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rows[row].naturalCoordinates);
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EXPECT_EQ(state.shellResults()[row].localFrame, rows[row].localFrame);
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EXPECT_EQ(
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state.shellResults()[row].generalizedStrain,
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rows[row].generalizedStrain);
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EXPECT_EQ(
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state.shellResults()[row].sectionResultant,
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rows[row].sectionResultant);
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for (std::size_t position = 0U;
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position < rows[row].stress.size();
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++position) {
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EXPECT_EQ(
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state.shellResults()[row].stress[position].position,
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rows[row].stress[position].position);
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EXPECT_DOUBLE_EQ(
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state.shellResults()[row].stress[position].zeta,
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rows[row].stress[position].zeta);
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EXPECT_EQ(
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state.shellResults()[row].stress[position].components,
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rows[row].stress[position].components);
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}
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}
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EXPECT_DOUBLE_EQ(state.physicalStrainEnergy(), physicalStrainEnergy);
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EXPECT_EQ(state.equilibrium(), equilibrium);
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EXPECT_EQ(state.verificationMetrics(), verificationMetrics);
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}
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void expectShellCandidateRejectedWithoutMutation(
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fesa::AnalysisState& state,
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const std::vector<fesa::EntityIndex>& expectedElements,
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const fesa::ShellStateCandidate& candidate,
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const fesa::ShellStateCandidate& committed) {
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const auto status = state.commitShellResults(expectedElements, candidate);
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EXPECT_FALSE(status.isOk());
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EXPECT_EQ(status.failureCategory(), fesa::FailureCategory::model);
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expectShellStateEquals(
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state,
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committed.rows,
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committed.physicalStrainEnergy,
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committed.equilibrium,
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committed.verificationMetrics);
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ASSERT_TRUE(state.commitShellResults(expectedElements, committed).isOk());
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}
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} // namespace
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TEST(AnalysisState, PreservesStepFrameAndStableRowOrder) {
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@@ -100,3 +227,111 @@ TEST(AnalysisState, PreservesStepFrameAndStableRowOrder) {
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EXPECT_EQ(constState.stressResults()[0].source, "input");
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EXPECT_EQ(constState.stressResults()[1].sectionPoint, 2U);
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}
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// MITC4-STATE-001
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TEST(AnalysisState, OwnsExactShellRowsInStableElementAndLocationOrder) {
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const auto dofs = makeEmptyDofs();
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auto state = fesa::AnalysisState::create(dofs, {"Step-1", 0U});
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const std::vector<fesa::EntityIndex> expectedElements{3U, 7U};
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auto candidate = makeShellCandidate(expectedElements);
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const auto status = state.commitShellResults(expectedElements, candidate);
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ASSERT_TRUE(status.isOk());
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const fesa::AnalysisState& constState = state;
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ASSERT_EQ(constState.shellResults().size(), 8U);
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EXPECT_EQ(constState.shellResults()[0].element, 3U);
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EXPECT_EQ(
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constState.shellResults()[0].location,
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fesa::ShellMidsurfaceLocation::gp1);
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EXPECT_EQ(
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constState.shellResults()[3].location,
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fesa::ShellMidsurfaceLocation::gp4);
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EXPECT_EQ(constState.shellResults()[4].element, 7U);
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EXPECT_EQ(
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constState.shellResults()[4].location,
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fesa::ShellMidsurfaceLocation::gp1);
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EXPECT_EQ(
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constState.shellResults()[0].naturalCoordinates,
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(std::array<double, 2>{
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-1.0 / std::sqrt(3.0), -1.0 / std::sqrt(3.0)}));
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EXPECT_EQ(
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constState.shellResults()[2].generalizedStrain,
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(std::array<double, 8>{
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321.0, 322.0, 323.0, 324.0,
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325.0, 326.0, 327.0, 328.0}));
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EXPECT_EQ(
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constState.shellResults()[7].sectionResultant,
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(std::array<double, 8>{
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741.0, 742.0, 743.0, 744.0,
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745.0, 746.0, 747.0, 748.0}));
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EXPECT_EQ(
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constState.shellResults()[7].stress[0].position,
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fesa::ShellSectionPosition::bottom);
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EXPECT_DOUBLE_EQ(constState.shellResults()[7].stress[0].zeta, -1.0);
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EXPECT_EQ(
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constState.shellResults()[7].stress[2].components,
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(std::array<double, 3>{757.0, 758.0, 759.0}));
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}
|
||||
|
||||
// MITC4-STATE-002
|
||||
TEST(AnalysisState, CommitsFiniteShellGlobalEvidence) {
|
||||
const auto dofs = makeEmptyDofs();
|
||||
auto state = fesa::AnalysisState::create(dofs, {"Step-1", 0U});
|
||||
const std::vector<fesa::EntityIndex> expectedElements{5U};
|
||||
const auto candidate = makeShellCandidate(expectedElements);
|
||||
|
||||
const auto status = state.commitShellResults(expectedElements, candidate);
|
||||
|
||||
ASSERT_TRUE(status.isOk());
|
||||
EXPECT_DOUBLE_EQ(state.physicalStrainEnergy(), 35.5);
|
||||
EXPECT_EQ(
|
||||
state.equilibrium(),
|
||||
(std::array<double, 6>{1.0, -2.0, 3.0, -4.0, 5.0, -6.0}));
|
||||
EXPECT_EQ(
|
||||
state.verificationMetrics(),
|
||||
(std::array<double, 3>{1.0e-11, 2.0e-11, 3.0e-11}));
|
||||
}
|
||||
|
||||
// MITC4-STATE-003
|
||||
TEST(AnalysisState, InvalidShellCandidatesLeavePriorStateUnchanged) {
|
||||
const auto dofs = makeEmptyDofs();
|
||||
auto state = fesa::AnalysisState::create(dofs, {"Step-1", 0U});
|
||||
const std::vector<fesa::EntityIndex> expectedElements{5U};
|
||||
const auto committed = makeShellCandidate(expectedElements);
|
||||
ASSERT_TRUE(state.commitShellResults(expectedElements, committed).isOk());
|
||||
|
||||
auto invalidLocation = makeShellCandidate(expectedElements);
|
||||
invalidLocation.rows[0].location = fesa::ShellMidsurfaceLocation::gp2;
|
||||
expectShellCandidateRejectedWithoutMutation(
|
||||
state, expectedElements, invalidLocation, committed);
|
||||
|
||||
auto nonfinite = makeShellCandidate(expectedElements);
|
||||
nonfinite.rows[2].generalizedStrain[6] =
|
||||
(std::numeric_limits<double>::quiet_NaN)();
|
||||
expectShellCandidateRejectedWithoutMutation(
|
||||
state, expectedElements, nonfinite, committed);
|
||||
|
||||
auto nonfiniteFrame = makeShellCandidate(expectedElements);
|
||||
nonfiniteFrame.rows[1].localFrame[2][0] =
|
||||
(std::numeric_limits<double>::infinity)();
|
||||
expectShellCandidateRejectedWithoutMutation(
|
||||
state, expectedElements, nonfiniteFrame, committed);
|
||||
|
||||
auto invalidSectionPosition = makeShellCandidate(expectedElements);
|
||||
invalidSectionPosition.rows[3].stress[0].position =
|
||||
fesa::ShellSectionPosition::top;
|
||||
expectShellCandidateRejectedWithoutMutation(
|
||||
state, expectedElements, invalidSectionPosition, committed);
|
||||
|
||||
auto nonfiniteGlobalEvidence = makeShellCandidate(expectedElements);
|
||||
nonfiniteGlobalEvidence.verificationMetrics[1] =
|
||||
(std::numeric_limits<double>::infinity)();
|
||||
expectShellCandidateRejectedWithoutMutation(
|
||||
state, expectedElements, nonfiniteGlobalEvidence, committed);
|
||||
|
||||
auto incompleteInventory = makeShellCandidate(expectedElements);
|
||||
incompleteInventory.rows.pop_back();
|
||||
expectShellCandidateRejectedWithoutMutation(
|
||||
state, expectedElements, incompleteInventory, committed);
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user